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Characterization of dynamic tensile and shear strength of safety bolts in light collision safety devices of a train

机译:火车灯碰撞安全装置中安全螺栓动态拉伸和剪切强度的特征

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This paper introduces design strategy to develop safety bolts in light collision safety devices under dynamic tensile and shear loading conditions. The light collision safety device is an energy absorbing one for low speed collision of a train. An energy absorbing scenario in the device has several sequential stages. Tension and shear bolts are the key components which make the sequential energy absorbing scenario operated by a series of failures at the specific collapse load. Exact failure loads of tension and shear bolts at crash conditions were determined in aid of finite element analysis considering the dynamic material properties of component materials. Failure loads of tension and shear bolts designed were verified with experiments using tension and shear type jig sets at quasi-static and dynamic loading conditions. Strain gages were attached to both the parallel section of tension bolts to measure the load response acting on tension bolts and the jig set to measure the load responses acting on shear bolts. The quasi-static and dynamic experiments as well as the numerical analysis explained above predicted the load capacities of tension and shear bolts accurately for the crashworthiness design.
机译:本文介绍了在动态拉伸和剪切装载条件下在浅碰撞安全装置中开发安全螺栓的设计策略。光碰撞安全装置是一种用于火车的低速碰撞的能量吸收。设备中的能量吸收方案具有多个连续阶段。张力和剪切螺栓是通过在特定折叠负载下的一系列故障操作的顺序能量吸收场景使连续的能量吸收方案进行关键部件。考虑到组分材料的动态材料性能,确定了碰撞条件下撞击条件下的张力和剪切螺栓的确切载荷。使用张力和剪切式夹具设置在准静态和动态负载条件下,通过实验验证了设计的张力和剪切螺栓的故障载荷。应变计附着到张力螺栓的平行部分,以测量作用在张力螺栓上的负载响应和夹具设置,以测量作用在剪切螺栓上的负载响应。准确和动态实验以及上述数值分析预测了用于抗碰撞性设计的张力和剪切螺栓的负载能力。

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